Track 2: Process Innovation, Circularity and Recovery

Qu, Y., Li, H., Tian, W., Wang, X., Wang, X., Jia, X., . . . Tang, Y. (2015). Leaching of valuable metals from red mud via batch and continuous processes by using fungi. Minerals Engineering, 81, 1-4. doi:10.1016/j.mineng.2015.07.022 Qu, Y., & Lian, B. (2013). Bioleaching of rare earth and radioactive elements from red mud using Penicillium tricolor RM-10. Bioresource Technology, 136, 16-23. doi:10.1016/j.biortech.2013.03.070 Reddy, M. S. (2025). Reduction of alkalinity and establishment of vegetation on bauxite residue using Aspergillus tubingensis and different amendments. Environmental Technology, 46(23), 4610-4623. doi:10.1080/09593330.2025.2514288 Rose, P. K., & Devi, R. (2018). Heavy metal tolerance and adaptability assessment of indigenous filamentous fungi isolated from industrial wastewater and sludge samples. Beni-Suef University Journal of Basic and Applied Sciences, 7(4), 688-694. doi:10.1016/j.bjbas.2018.08.001 Soto-Montandon, F., Gillane, R., Marcellin, E., Harrison, S. T. L., & Villa-Gomez, D. (2025). Bioleaching for critical metal recovery from bauxite residue- unlocking waste valorization. Frontiers in Bioengineering and Biotechnology, 13. doi:10.3389/fbioe.2025.1685819 Soto-Montandon, F., Gillane, R., Webster, L., Marcellin, E., Harrison, S., & Villa-Gomez, D. (In preparation). Characterization of bauxite residue and development of a bioleaching strategy. Thangavelu, V., Tang, J., Ryan, D., & Valix, M. (2006). Effect of saline stress on fungi metabolism and biological leaching of weathered saprolite ores. Minerals Engineering, 19(12), 12661273. doi:10.1016/j.mineng.2006.02.007 The Leibniz Institute, D. Handling of Cultures and Ampoules. In. Toli, A., Kotsanis, D., Psoma, M., Marinos, D., Davris, P., Balomenos, E., & Panias, D. (2023). The efficient use of sulfuric acid in bauxite residue leaching. Materials Proceedings, 15(1). doi:10.3390/materproc2023015053 Tsakiridis, P. E., Agatzini-Leonardou, S., & Oustadakis, P. (2004). Red mud addition in the raw meal for the production of Portland cement clinker. Journal of Hazardous Materials, 116(1-2), 103-110. doi:10.1016/j.jhazmat.2004.08.002 Tzeferis, P. G. (1994). Leaching of a low grade hematitic laterite ore using fungi and biologically produced acid metabolites. International Journal of Mineral Processing, 42(3-4), 267-283. doi:10.1016/0301-7516(94)00032-8 U. S. Environmental Protection Agency. (2024, May 23, 2025). TENORM: bauxite and alumina production wastes. Retrieved from https://www.epa.gov/radiation/tenorm-bauxite-andalumina-production-wastes Ujaczki, É., Zimmermann, Y. S., Gasser, C. A., Molnár, M., Feigl, V., & Lenz, M. (2017). Red mud as secondary source for critical raw materials - extraction study. Journal of Chemical Technology & Biotechnology, 92(11), 2835-2844. doi:10.1002/jctb.5300

RkJQdWJsaXNoZXIy MTM0Mzk2